Phenotype annotations for a gene are curated single mutant phenotypes that require an observable (e.g., "cell shape"), a qualifier (e.g., "abnormal"), a mutant type (e.g., null), strain background, and a reference. In addition, annotations are classified as classical genetics or high-throughput (e.g., large scale survey, systematic mutation set). Whenever possible, allele information and additional details are provided.
A phenotype is defined as an observable (e.g., apoptosis) and a qualifier (e.g., increased). There may be more than one row with the same phenotype if that phenotype was observed in separate studies or in different conditions, strains, alleles, etc.
19 entries for 15 phenotypesIncrease the total number of rows showing on this page using the pull-down located below the table, or use the page scroll at the table's top right to browse through the table's pages; use the arrows to the right of a column header to sort by that column; filter the table using the "Filter" box at the top of the table; click on the small "i" buttons located within a cell for an annotation to view further details.
Phenotype | Experiment Type | Mutant Information | Strain Background | Chemical | Details | Reference |
---|---|---|---|---|---|---|
chromosome/plasmid maintenance: decreased | systematic mutation set | overexpression | Other | Assay: a-like faker (ALF) assay Details: dosage chromosome instability (dCIN) involving chromosome loss, rearrangement and/or gene conversion events | Duffy S, et al. (2016) PMID:27551064 | |
chromosome/plasmid maintenance: decreased | systematic mutation set | overexpression | Other | Assay: chromosome transmission fidelity (CTF) assay Details: dosage chromosome instability (dCIN) involving chromosome loss | Duffy S, et al. (2016) PMID:27551064 | |
competitive fitness: decreased | competitive growth fitness profiling using complete deletion alleles | null Allele: tda1-Δ | S288C | Media: minimal medium Details: Relative fitness score: 0.993 | Breslow DK, et al. (2008) PMID:18622397 | |
competitive fitness: increased | systematic mutation set | null Allele: tda1-Δ | S288C | Media: rich medium (YPD) w/6% ethanol, ETH | Qian W, et al. (2012) PMID:23103169 | |
haploinsufficient | heterozygous diploid, competitive growth | null Allele: tda1-Δ | S288C | Treatment: conditions that mimic Phase I of a batch fermentation, equivalent to ~14 hours after inoculation of a batch fermentation | Novo M, et al. (2013) PMID:24040173 | |
haploproficient | heterozygous diploid, competitive growth genome-wide fitness profiling | null Allele: tda1-Δ | S288C | Media: turbidostat growth in FPM medium Details: Relative growth score: 0.0078 | Pir P, et al. (2012) PMID:22244311 | |
heat sensitivity: decreased | systematic mutation set high throughput heat ramp cell death assay | null Allele: tda1-Δ | S288C | Temperature: elevated temperature Details: ramp temperature from ambient to 30 deg C immediately, hold 1 min at 30 deg C, ramp temperature from 30 deg C to 62 deg C over 20 min, return to ambient | Teng X, et al. (2011) PMID:21814286 | |
oxidative stress resistance: decreased | homozygous diploid, competitive growth | null Allele: tda1-Δ | S288C | 3 mM hydrogen peroxide | Brown JA, et al. (2006) PMID:16738548 | |
protein/peptide distribution: abnormal Reporter: Hxk2-GFP | classical genetics | null Allele: tda1-Δ | S288C | Media: glucose, 0.05 % Details: Increased nuclear localization in high glucose conditions | Lesko MA, et al. (2023) PMID:37196001 | |
protein/peptide modification: absent Reporter: Hxk2p | classical genetics | null Allele: tda1-Δ | S288C | Details: phosphorylation of Hxk2p at S15 is absent in the null mutant | Kettner K, et al. (2012) PMID:22289182 |
This diagram displays phenotype observables (purple squares) that are shared between the given gene (yellow circle) and other genes (gray circles) based on the number of phenotype observables shared (adjustable using the slider at the bottom).
Click on a gene or phenotype observable name to go to its specific page within SGD; drag any of the gene or observable objects around within the visualization for easier viewing; click “Reset” to automatically redraw the diagram; filter the genes that share observable terms with the given gene by the number of terms they share by clicking anywhere on the slider bar or dragging the tab to the desired filter number.
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